Solar Wireless Charging Circuit System Designing

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Abstract:

The solar wireless charging circuit system based on resonance coupling power wireless transmission is aimed at addressing long wire, complex manual operation of wire charging type and short-distance, low efficiency of general electromagnetic induction-type power wireless transmission. Solar is conversed to electricity by photoelectric conversion then the electricity passes the following processing circuit: solar power supply circuit, power wireless transmission circuit and lithium battery charging circuit to complete lithium battery charging finally. The proposed circuit system owns perfect long-distance transmission, safe-operation, automotive rechargeable, flexible and efficient etc basic features and preventing over charge and over discharge double protection performance.

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1017-1020

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November 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] Hirai J J, Kim T W and Kawamura A, in: Wireless Transmission of Power and Information for Cableless Linear Motor Drive, volume 15(1) of IEEE transactions on Power Electronics, (2000), pp.21-27.

DOI: 10.1109/63.817358

Google Scholar

[2] Esser A and Skudelny H C, in: A New Approach to Power Supplies for Robots, volume 27(5) of IEEE Transactions on Industry Applications (1991), pp.871-875.

DOI: 10.1109/28.90341

Google Scholar

[3] Manolatou C, Khan M J, Fan Shanhui, et al, in: Coupling of Modes Analysis of Resonant Channel Add-Drop Filters, volume 35(9) of IEEE Journal of Quantum Electronics (1999), pp.1322-1331.

DOI: 10.1109/3.784592

Google Scholar

[4] Fredy S Q, Jesús G C, Jordi S, et al, in: Wireless Power of Single-Chip Systems with Integrated Coil and External Wire-loop Resonator, volume 92(7) of Applied Physics Letters (2008), p.074102 (1-3).

DOI: 10.1063/1.2887885

Google Scholar

[5] Tsang M and Psaltis D, in: Theory of Resonantly Enhanced Near-Field Imaging, volume 15(19) of Optical Society of America (2007), pp.11959-11970.

DOI: 10.1364/oe.15.011959

Google Scholar

[6] Soljačić M, Kurs A, Karalis A, et al, in: Wireless Power Transfer via Strongly Coupled Magnetic Resonances, volume 112(6) of Science express (2007), pp.1-10.

DOI: 10.1126/science.1143254

Google Scholar

[7] Hu Xuehao and Zhou Xiaoxin, in: Electricity (2005).

Google Scholar

[8] Chen Yongzhen, Han Mei and Chen Zhibo: Hardware Circuit Design Earnestly of National Student Electronics Designing Competitions ( Electronic Industry Press, Beijing 2009).

Google Scholar

[9] Hu Jiantang, Tan Bowen and Yu Dequan: Solid High Frequency Circuit (National Defense Science and Technology University Press, Changsha 1999).

Google Scholar

[10] Fu Wenzhen etc, in: Max Efficiency Analysis and Designing of Self-Resonant Coil Coupling Power Wireless Transmission, volume29 (18) of Proceedings of the CSEE (2009), pp.2-4.

Google Scholar